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Obico polling could freeze the live camera stream within seconds of opening the viewer. Cause: when the buffer-reuse path in obico_detection._capture_frame saw an empty _last_frames[printer_id] entry (stream startup before the first JPEG lands, or upstream mid-reconnect after a 30s read timeout), it fell through to capture_camera_frame_bytes() and opened a second RTSP socket. On firmwares that allow only one camera connection, that second socket forced the printer to drop the live fan-out connection - the viewer's ffmpeg then hit its own 30s timeout, looped through 30 reconnects at 0.2s, all racing the next Obico poll, and the broadcaster pump exited. Widen the gate from "do we have a buffered frame?" to "is any fan-out stream registered for this printer?". New is_stream_active() helper checks _active_streams / _active_chamber_streams independently of buffer state. _capture_frame consults it first: if a viewer is attached, it returns the buffered frame when available or None (skip this poll cycle) when not. Never opens a competing socket while a viewer is connected. Cost: at most one missed Obico detection cycle per viewer-attach (~10s lag). Benefit: zero competing-socket events while any viewer is connected. try_get_active_buffered_frame() refactored to delegate to is_stream_active() so the two helpers stay in lockstep. The /camera/snapshot caller is unchanged behaviorally (snapshot is a user-initiated single-shot; falling through to fresh capture on an empty buffer is the desired behavior there).
584 lines
23 KiB
Python
584 lines
23 KiB
Python
"""Unit tests for Obico detection service (#172)."""
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from unittest.mock import AsyncMock, MagicMock, patch
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import pytest
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from backend.app.schemas.settings import AppSettingsUpdate
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from backend.app.services.obico_detection import (
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FRAME_CACHE_TTL,
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ObicoDetectionService,
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_frame_cache,
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pop_frame,
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stash_frame,
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)
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from backend.app.services.obico_smoothing import WARMUP_FRAMES
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FAKE_JPEG = b"\xff\xd8\xff\xe0\x00\x10JFIF\x00\x01\x01\x00\x00\x01\x00\x01\x00\x00\xff\xd9"
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class TestSettingsSchemaValidators:
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"""Guard rails on the new obico_* AppSettings fields."""
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def test_sensitivity_accepts_valid_values(self):
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for value in ("low", "medium", "high"):
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u = AppSettingsUpdate(obico_sensitivity=value)
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assert u.obico_sensitivity == value
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def test_sensitivity_rejects_garbage(self):
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with pytest.raises(ValueError, match="obico_sensitivity"):
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AppSettingsUpdate(obico_sensitivity="extreme")
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def test_action_accepts_valid_values(self):
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for value in ("notify", "pause", "pause_and_off"):
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assert AppSettingsUpdate(obico_action=value).obico_action == value
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def test_action_rejects_garbage(self):
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with pytest.raises(ValueError, match="obico_action"):
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AppSettingsUpdate(obico_action="explode")
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def test_enabled_printers_accepts_empty(self):
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assert AppSettingsUpdate(obico_enabled_printers="").obico_enabled_printers == ""
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assert AppSettingsUpdate(obico_enabled_printers=None).obico_enabled_printers is None
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def test_enabled_printers_accepts_int_array(self):
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u = AppSettingsUpdate(obico_enabled_printers="[1, 2, 3]")
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assert u.obico_enabled_printers == "[1, 2, 3]"
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def test_enabled_printers_rejects_non_json(self):
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with pytest.raises(ValueError, match="valid JSON"):
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AppSettingsUpdate(obico_enabled_printers="1,2,3")
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def test_enabled_printers_rejects_non_list(self):
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with pytest.raises(ValueError, match="JSON array"):
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AppSettingsUpdate(obico_enabled_printers='{"1": true}')
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def test_enabled_printers_rejects_non_int_elements(self):
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with pytest.raises(ValueError, match="JSON array"):
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AppSettingsUpdate(obico_enabled_printers='[1, "two"]')
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def test_poll_interval_bounds(self):
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with pytest.raises(ValueError):
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AppSettingsUpdate(obico_poll_interval=4)
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with pytest.raises(ValueError):
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AppSettingsUpdate(obico_poll_interval=121)
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assert AppSettingsUpdate(obico_poll_interval=10).obico_poll_interval == 10
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class TestGetStatus:
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def test_empty_initial_status(self):
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svc = ObicoDetectionService()
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s = svc.get_status()
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assert s["is_running"] is False
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assert s["per_printer"] == {}
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assert s["history"] == []
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assert "low" in s["thresholds"] and "high" in s["thresholds"]
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class TestTestConnection:
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@pytest.mark.asyncio
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async def test_empty_url_via_route(self):
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"""Service does not special-case empty URL — the route does."""
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svc = ObicoDetectionService()
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# This will fail DNS/connect, but should return ok=False
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result = await svc.test_connection("http://nonexistent-obico-host-xyz.invalid:3333")
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assert result["ok"] is False
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assert result["error"] is not None
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@pytest.mark.asyncio
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async def test_healthy_response_is_ok(self):
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svc = ObicoDetectionService()
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mock_response = MagicMock(status_code=200, text="ok")
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mock_client = MagicMock()
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mock_client.get = AsyncMock(return_value=mock_response)
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mock_client.__aenter__ = AsyncMock(return_value=mock_client)
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mock_client.__aexit__ = AsyncMock(return_value=False)
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with patch("backend.app.services.obico_detection.httpx.AsyncClient", return_value=mock_client):
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result = await svc.test_connection("http://obico:3333")
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assert result["ok"] is True
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assert result["status_code"] == 200
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assert result["body"] == "ok"
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assert result["error"] is None
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@pytest.mark.asyncio
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async def test_non_ok_body_is_not_ok(self):
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svc = ObicoDetectionService()
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mock_response = MagicMock(status_code=200, text="something else")
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mock_client = MagicMock()
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mock_client.get = AsyncMock(return_value=mock_response)
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mock_client.__aenter__ = AsyncMock(return_value=mock_client)
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mock_client.__aexit__ = AsyncMock(return_value=False)
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with patch("backend.app.services.obico_detection.httpx.AsyncClient", return_value=mock_client):
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result = await svc.test_connection("http://obico:3333/")
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assert result["ok"] is False
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assert result["body"] == "something else"
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class TestPollOneStateLifecycle:
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"""Confirms per-printer state is reset when a new print starts."""
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@pytest.mark.asyncio
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async def test_new_task_name_resets_state(self):
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svc = ObicoDetectionService()
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# Seed a state that has been running for a while
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from backend.app.services.obico_smoothing import PrintState
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seeded = PrintState()
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for _ in range(WARMUP_FRAMES + 5):
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seeded.update(0.5)
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svc._states[1] = seeded
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svc._state_keys[1] = "old_task"
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svc._action_fired[1] = True
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settings = {
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"enabled": True,
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"ml_url": "http://obico:3333",
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"sensitivity": "medium",
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"action": "notify",
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"poll_interval": 10,
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"enabled_printers": None,
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"external_url": "http://bambuddy:8000",
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}
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status = MagicMock(state="RUNNING", task_name="new_task", subtask_name="")
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mock_response = MagicMock()
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mock_response.json.return_value = {"detections": []}
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mock_response.raise_for_status = MagicMock()
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mock_client = MagicMock()
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mock_client.get = AsyncMock(return_value=mock_response)
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mock_client.__aenter__ = AsyncMock(return_value=mock_client)
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mock_client.__aexit__ = AsyncMock(return_value=False)
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with (
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patch("backend.app.services.obico_detection.httpx.AsyncClient", return_value=mock_client),
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patch.object(svc, "_capture_frame", new=AsyncMock(return_value=FAKE_JPEG)),
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):
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await svc._check_printer(1, status, settings)
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# State was reset (frame_count is 1 after the single update, not 36)
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assert svc._states[1].frame_count == 1
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assert svc._state_keys[1] == "new_task"
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assert svc._action_fired[1] is False
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@pytest.mark.asyncio
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async def test_ml_api_error_does_not_crash(self):
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svc = ObicoDetectionService()
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settings = {
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"enabled": True,
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"ml_url": "http://obico:3333",
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"sensitivity": "medium",
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"action": "notify",
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"poll_interval": 10,
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"enabled_printers": None,
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"external_url": "http://bambuddy:8000",
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}
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status = MagicMock(state="RUNNING", task_name="job", subtask_name="")
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mock_client = MagicMock()
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mock_client.get = AsyncMock(side_effect=RuntimeError("connection refused"))
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mock_client.__aenter__ = AsyncMock(return_value=mock_client)
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mock_client.__aexit__ = AsyncMock(return_value=False)
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with (
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patch("backend.app.services.obico_detection.httpx.AsyncClient", return_value=mock_client),
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patch.object(svc, "_capture_frame", new=AsyncMock(return_value=FAKE_JPEG)),
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):
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await svc._check_printer(1, status, settings)
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assert svc._last_error is not None
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assert "connection refused" in svc._last_error
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@pytest.mark.asyncio
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async def test_ml_api_empty_exception_message_falls_back_to_type(self):
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"""If str(exc) is empty, log the exception class name instead of a blank suffix."""
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svc = ObicoDetectionService()
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settings = {
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"enabled": True,
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"ml_url": "http://obico:3333",
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"sensitivity": "medium",
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"action": "notify",
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"poll_interval": 10,
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"enabled_printers": None,
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"external_url": "http://bambuddy:8000",
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}
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status = MagicMock(state="RUNNING", task_name="job", subtask_name="")
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class _SilentError(Exception):
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def __str__(self) -> str:
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return ""
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mock_client = MagicMock()
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mock_client.get = AsyncMock(side_effect=_SilentError())
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mock_client.__aenter__ = AsyncMock(return_value=mock_client)
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mock_client.__aexit__ = AsyncMock(return_value=False)
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with (
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patch("backend.app.services.obico_detection.httpx.AsyncClient", return_value=mock_client),
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patch.object(svc, "_capture_frame", new=AsyncMock(return_value=FAKE_JPEG)),
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):
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await svc._check_printer(1, status, settings)
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assert svc._last_error is not None
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assert "_SilentError" in svc._last_error
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# The suffix is never blank
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assert not svc._last_error.rstrip().endswith(":")
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@pytest.mark.asyncio
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async def test_failure_fires_action_only_once(self):
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"""Once a failure has fired for a print, subsequent failures should not re-fire."""
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svc = ObicoDetectionService()
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settings = {
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"enabled": True,
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"ml_url": "http://obico:3333",
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"sensitivity": "medium",
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"action": "notify",
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"poll_interval": 10,
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"enabled_printers": None,
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"external_url": "http://bambuddy:8000",
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}
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status = MagicMock(state="RUNNING", task_name="job", subtask_name="")
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# Seed state so the next frame crosses HIGH immediately
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from backend.app.services.obico_smoothing import PrintState
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seeded = PrintState()
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for _ in range(WARMUP_FRAMES + 500):
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seeded.update(1.0)
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svc._states[1] = seeded
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svc._state_keys[1] = "job"
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svc._action_fired[1] = False
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mock_response = MagicMock()
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mock_response.json.return_value = {"detections": [["failure", 0.9, [0, 0, 1, 1]]]}
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mock_response.raise_for_status = MagicMock()
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mock_client = MagicMock()
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mock_client.get = AsyncMock(return_value=mock_response)
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mock_client.__aenter__ = AsyncMock(return_value=mock_client)
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mock_client.__aexit__ = AsyncMock(return_value=False)
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with (
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patch("backend.app.services.obico_detection.httpx.AsyncClient", return_value=mock_client),
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patch("backend.app.services.obico_actions.execute_action", new=AsyncMock()) as mock_action,
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patch.object(svc, "_capture_frame", new=AsyncMock(return_value=FAKE_JPEG)),
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):
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await svc._check_printer(1, status, settings)
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assert mock_action.call_count == 1
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await svc._check_printer(1, status, settings)
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# Second call must not dispatch again
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assert mock_action.call_count == 1
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class TestCaptureFrameSharesBroadcasterUpstream:
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"""#1271: Obico's per-poll snapshot must reuse the live-stream broadcaster's
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buffered frame when a viewer is watching, instead of opening a second RTSP
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socket. On X2D firmware 01.01.00.00 the second socket kicks the live stream.
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"""
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@pytest.mark.asyncio
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async def test_returns_buffered_frame_when_stream_active(self):
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printer = MagicMock(
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external_camera_enabled=False,
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external_camera_url=None,
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ip_address="192.168.1.10",
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access_code="12345678",
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model="N6",
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)
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mock_session = MagicMock()
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mock_session.get = AsyncMock(return_value=printer)
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mock_ctx = MagicMock()
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mock_ctx.__aenter__ = AsyncMock(return_value=mock_session)
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mock_ctx.__aexit__ = AsyncMock(return_value=None)
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svc = ObicoDetectionService()
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with (
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patch("backend.app.services.obico_detection.async_session", return_value=mock_ctx),
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patch(
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"backend.app.api.routes.camera.is_stream_active",
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return_value=True,
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),
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patch(
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"backend.app.api.routes.camera.try_get_active_buffered_frame",
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return_value=FAKE_JPEG,
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),
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patch(
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"backend.app.services.camera.capture_camera_frame_bytes",
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new=AsyncMock(return_value=b"FRESH-CAPTURE-SHOULD-NOT-BE-USED"),
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) as mock_fresh,
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):
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result = await svc._capture_frame(printer_id=1)
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assert result == FAKE_JPEG
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mock_fresh.assert_not_called()
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@pytest.mark.asyncio
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async def test_skips_poll_when_stream_active_but_buffer_empty(self):
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"""#1348: viewer attached + buffer empty must NOT open a competing socket."""
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printer = MagicMock(
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external_camera_enabled=False,
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external_camera_url=None,
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ip_address="192.168.1.10",
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access_code="12345678",
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model="X1C",
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)
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mock_session = MagicMock()
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mock_session.get = AsyncMock(return_value=printer)
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mock_ctx = MagicMock()
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mock_ctx.__aenter__ = AsyncMock(return_value=mock_session)
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mock_ctx.__aexit__ = AsyncMock(return_value=None)
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svc = ObicoDetectionService()
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with (
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patch("backend.app.services.obico_detection.async_session", return_value=mock_ctx),
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patch(
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"backend.app.api.routes.camera.is_stream_active",
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return_value=True,
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),
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patch(
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"backend.app.api.routes.camera.try_get_active_buffered_frame",
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return_value=None, # Stream active, but first frame not buffered yet
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),
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patch(
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"backend.app.services.camera.capture_camera_frame_bytes",
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new=AsyncMock(return_value=b"FRESH-CAPTURE-WOULD-KICK-VIEWER"),
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) as mock_fresh,
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):
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result = await svc._capture_frame(printer_id=1)
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assert result is None, "must skip this poll cycle, not open a competing socket"
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mock_fresh.assert_not_called()
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@pytest.mark.asyncio
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async def test_falls_back_to_fresh_capture_when_no_stream(self):
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printer = MagicMock(
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external_camera_enabled=False,
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external_camera_url=None,
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ip_address="192.168.1.10",
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access_code="12345678",
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model="N6",
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)
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mock_session = MagicMock()
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mock_session.get = AsyncMock(return_value=printer)
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mock_ctx = MagicMock()
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mock_ctx.__aenter__ = AsyncMock(return_value=mock_session)
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mock_ctx.__aexit__ = AsyncMock(return_value=None)
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svc = ObicoDetectionService()
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with (
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patch("backend.app.services.obico_detection.async_session", return_value=mock_ctx),
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patch(
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"backend.app.api.routes.camera.is_stream_active",
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return_value=False,
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),
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patch(
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"backend.app.services.camera.capture_camera_frame_bytes",
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new=AsyncMock(return_value=FAKE_JPEG),
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) as mock_fresh,
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):
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result = await svc._capture_frame(printer_id=1)
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assert result == FAKE_JPEG
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mock_fresh.assert_called_once()
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class TestFrameCache:
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"""One-shot JPEG cache that lets us sidestep Obico's 5s read timeout.
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Obico's ML API fetches snapshots via `GET /p/?img=URL` with `timeout=(0.1, 5)`.
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Our /camera/snapshot can exceed that on cold calls (RTSP keyframe wait). So the
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detection loop captures locally, stashes the JPEG bytes under a nonce, then hands
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Obico a URL that returns those bytes instantly. The cache is single-use + TTLed
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so a leaked nonce can't be replayed.
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"""
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def setup_method(self):
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_frame_cache.clear()
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@pytest.mark.asyncio
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async def test_stash_and_pop_roundtrip(self):
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nonce = await stash_frame(FAKE_JPEG)
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assert nonce # non-empty URL-safe token
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data = await pop_frame(nonce)
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assert data == FAKE_JPEG
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@pytest.mark.asyncio
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async def test_nonce_is_single_use(self):
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nonce = await stash_frame(FAKE_JPEG)
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assert await pop_frame(nonce) == FAKE_JPEG
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# Second pop returns None — caches replay protection
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assert await pop_frame(nonce) is None
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@pytest.mark.asyncio
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async def test_unknown_nonce_returns_none(self):
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assert await pop_frame("not-a-real-nonce") is None
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@pytest.mark.asyncio
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async def test_stash_produces_unique_nonces(self):
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nonces = {await stash_frame(FAKE_JPEG) for _ in range(10)}
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assert len(nonces) == 10
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@pytest.mark.asyncio
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async def test_expired_entries_are_pruned_on_stash(self):
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"""New entries trigger pruning of TTL-expired ones — prevents unbounded growth."""
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# Manually seed an entry with a stale timestamp
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import time as time_module
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_frame_cache["stale-nonce"] = (FAKE_JPEG, time_module.monotonic() - FRAME_CACHE_TTL - 1)
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await stash_frame(FAKE_JPEG)
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# Stale entry was pruned
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assert "stale-nonce" not in _frame_cache
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@pytest.mark.asyncio
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async def test_pop_rejects_expired_nonce(self):
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"""Even if the entry is still in the dict, an expired TTL returns None."""
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import time as time_module
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_frame_cache["aging-nonce"] = (FAKE_JPEG, time_module.monotonic() - FRAME_CACHE_TTL - 1)
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assert await pop_frame("aging-nonce") is None
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class TestCheckPrinterUsesCachedFrameUrl:
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"""The URL sent to Obico must point at our nonce endpoint, not /camera/snapshot."""
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def setup_method(self):
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_frame_cache.clear()
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@pytest.mark.asyncio
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async def test_ml_api_called_with_cached_frame_url(self):
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svc = ObicoDetectionService()
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settings = {
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"enabled": True,
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"ml_url": "http://obico:3333",
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"sensitivity": "medium",
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"action": "notify",
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"poll_interval": 10,
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"enabled_printers": None,
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"external_url": "http://bambuddy:8000",
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}
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status = MagicMock(state="RUNNING", task_name="job", subtask_name="")
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mock_response = MagicMock()
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mock_response.json.return_value = {"detections": []}
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mock_response.raise_for_status = MagicMock()
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mock_client = MagicMock()
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mock_client.get = AsyncMock(return_value=mock_response)
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mock_client.__aenter__ = AsyncMock(return_value=mock_client)
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mock_client.__aexit__ = AsyncMock(return_value=False)
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with (
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patch("backend.app.services.obico_detection.httpx.AsyncClient", return_value=mock_client),
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patch.object(svc, "_capture_frame", new=AsyncMock(return_value=FAKE_JPEG)),
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):
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await svc._check_printer(1, status, settings)
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# ML API was called via GET (Obico's /p/ is GET-only)
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mock_client.get.assert_called_once()
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_args, kwargs = mock_client.get.call_args
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assert _args[0] == "http://obico:3333/p/"
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img_url = kwargs["params"]["img"]
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assert img_url.startswith("http://bambuddy:8000/api/v1/obico/cached-frame/")
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# The path segment after /cached-frame/ is the nonce itself — that nonce must
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# resolve back to our stashed frame (single-use guarantees freshness).
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nonce = img_url.rsplit("/", 1)[-1]
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assert await pop_frame(nonce) == FAKE_JPEG
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@pytest.mark.asyncio
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async def test_capture_failure_skips_ml_call(self):
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"""If we can't capture a frame, don't bother the ML API."""
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svc = ObicoDetectionService()
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settings = {
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"enabled": True,
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"ml_url": "http://obico:3333",
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"sensitivity": "medium",
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"action": "notify",
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"poll_interval": 10,
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"enabled_printers": None,
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"external_url": "http://bambuddy:8000",
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}
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status = MagicMock(state="RUNNING", task_name="job", subtask_name="")
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mock_client = MagicMock()
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mock_client.get = AsyncMock()
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mock_client.__aenter__ = AsyncMock(return_value=mock_client)
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mock_client.__aexit__ = AsyncMock(return_value=False)
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with (
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patch("backend.app.services.obico_detection.httpx.AsyncClient", return_value=mock_client),
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patch.object(svc, "_capture_frame", new=AsyncMock(return_value=None)),
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):
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await svc._check_printer(1, status, settings)
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mock_client.get.assert_not_called()
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assert svc._last_error is not None
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assert "Failed to capture snapshot" in svc._last_error
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@pytest.mark.asyncio
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async def test_missing_external_url_skips_ml_call(self):
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"""Without external_url, Obico can't reach our cached-frame endpoint."""
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svc = ObicoDetectionService()
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settings = {
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"enabled": True,
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"ml_url": "http://obico:3333",
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"sensitivity": "medium",
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"action": "notify",
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"poll_interval": 10,
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"enabled_printers": None,
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"external_url": "",
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}
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status = MagicMock(state="RUNNING", task_name="job", subtask_name="")
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mock_client = MagicMock()
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mock_client.get = AsyncMock()
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mock_client.__aenter__ = AsyncMock(return_value=mock_client)
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mock_client.__aexit__ = AsyncMock(return_value=False)
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with (
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patch("backend.app.services.obico_detection.httpx.AsyncClient", return_value=mock_client),
|
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patch.object(svc, "_capture_frame", new=AsyncMock(return_value=FAKE_JPEG)),
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):
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await svc._check_printer(1, status, settings)
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mock_client.get.assert_not_called()
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assert svc._last_error is not None
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assert "external_url" in svc._last_error
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|
@pytest.mark.asyncio
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async def test_successful_cycle_clears_previous_error(self):
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"""A cold-start RTSP timeout sets _last_error; the next successful poll must clear it.
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Regression for #172: the Status card banner ("Failed to capture snapshot for
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printer 1") stuck around after a one-off cold-start failure even though every
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subsequent poll captured + detected successfully.
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"""
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svc = ObicoDetectionService()
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settings = {
|
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"enabled": True,
|
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"ml_url": "http://obico:3333",
|
|
"sensitivity": "medium",
|
|
"action": "notify",
|
|
"poll_interval": 10,
|
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"enabled_printers": None,
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"external_url": "http://bambuddy:8000",
|
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}
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status = MagicMock(state="RUNNING", task_name="job", subtask_name="")
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# Seed a prior transient error, as would be left by a cold-start capture timeout.
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svc._last_error = "Failed to capture snapshot for printer 1"
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|
|
mock_response = MagicMock()
|
|
mock_response.json.return_value = {"detections": []}
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mock_response.raise_for_status = MagicMock()
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|
mock_client = MagicMock()
|
|
mock_client.get = AsyncMock(return_value=mock_response)
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mock_client.__aenter__ = AsyncMock(return_value=mock_client)
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mock_client.__aexit__ = AsyncMock(return_value=False)
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|
|
|
with (
|
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patch("backend.app.services.obico_detection.httpx.AsyncClient", return_value=mock_client),
|
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patch.object(svc, "_capture_frame", new=AsyncMock(return_value=FAKE_JPEG)),
|
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):
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await svc._check_printer(1, status, settings)
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assert svc._last_error is None
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